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Jelena Popović-Neuber

@jelenaneuber.bsky.social
113 followers 95 following 6 posts

Chemist // Associate professor of 🔋 technology at University of Stavanger // Tweets personal opinions

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Jelena Popović-Neuber @jelenaneuber.bsky.social · 02/08/2025
Latest paper deals with #solidstateionics of a doped thioantimonate electrolyte. With highly reactive potassium metal, of relevance for 🔋, we observe stabilization of the interphase and give a suggestion for its morphology. doi.org/10.1016/j.je...
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Reposted by Jelena Popović-Neuber
Daniel Jopling @usualtropes.bsky.social · 29/04/2025
“I chose this career because it lets me live in this world of ideas” 🤩💭💡 Inspiring words from our careers panelist Jelena Popovic-Neuber, Associate Professor of Battery Technology, University of Stavanger, this afternoon @ioppublishing.bsky.social @iopp-environment.bsky.social
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Jelena Popović-Neuber @jelenaneuber.bsky.social · 24/04/2025
Our new paper once again deals with #battery, #electrolyte, and #ionics. The developed methodology is as general as it gets, while the electrochemical cell is designed for semi-solid electrolytes. Nice collaboration with Uppsala University. sciencedirect.com/science/articl…
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Jelena Popović-Neuber @jelenaneuber.bsky.social · 03/02/2025
🆕 paper appearing in Electrochimica Acta. Based on conductivities of different species, we find situations with high effective cationic transference numbers in soft matter 🔋 electrolytes, where associated species exist. ➡️ www.sciencedirect.com/science/arti...
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Jelena Popović-Neuber @jelenaneuber.bsky.social · 20/12/2024
In just published Communications chemistry paper, we find long-term porosity of solid electrolyte interphase on model silicon electrodes in contact with lithium 🔋 electrolytes by impedance spectroscopy, even under rest conditions. For details, see: rdcu.be/d39nA
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Long term porosity of solid electrolyte interphase on model silicon anodes with liquid battery electrolytes
Communications Chemistry - A stable solid electrolyte interphase (SEI) is of great importance for battery electrodes for charging/discharging purposes, but the mechanism of SEI formation is not...
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